Division of Medical Physics in Radiology, German Cancer Research Center (DKFZ), Heidelberg, Germany.
Max-Planck-Institute for Nuclear Physics, Heidelberg, Germany.
NMR Biomed. 2020 May;33(5):e4262. doi: 10.1002/nbm.4262. Epub 2020 Feb 20.
Dual-frequency irradiation chemical exchange saturation transfer (dualCEST) allows imaging of endogenous bulk mobile proteins by selectively measuring the intramolecular spin diffusion. The resulting specificity to changes in the concentration, molecular size, and folding state of mobile proteins is of particular interest as a marker for neurodegenerative diseases and cancer. Until now, application of dualCEST in clinical trials was prevented by the inherently small signal-to-noise ratio and the resulting comparatively long examination time. In this study, we present an optimized acquisition protocol allowing 3D dualCEST-MRI examinations in a clinically relevant time frame. The optimization comprised the extension of the image readout to 3D, allowing a retrospective co-registration and application of denoising strategies. In addition, cosine-modulated dual-frequency presaturation pulses were implemented with a weighted acquisition scheme of the necessary frequency offsets. The optimization resulted in a signal-to-noise ratio gain by a factor of approximately 8. In particular, the application of denoising and the motion correction were the most crucial improvement steps. In vitro experiments verified the preservation of specificity of the dualCEST signal to proteins. Good-to-excellent intra-session and good inter-session repeatability was achieved, allowing reliable detection of relative signal differences of about 16% or higher. Applicability in a clinical setting was demonstrated by examining a patient with glioblastoma. The optimized acquisition protocol for dualCEST-MRI at 3 T enables selective imaging of endogenous bulk mobile proteins under clinically relevant conditions.
双频辐照化学交换饱和传递(dualCEST)允许通过选择性测量分子内自旋扩散来对内源性大量可移动蛋白进行成像。因此,双 CEST 对于移动蛋白的浓度、分子大小和折叠状态变化的特异性特别感兴趣,是神经退行性疾病和癌症的一个标志物。到目前为止,双 CEST 在临床试验中的应用受到固有信噪比小和检查时间相对较长的限制。在这项研究中,我们提出了一种优化的采集方案,允许在临床相关的时间范围内进行 3D 双 CEST-MRI 检查。优化包括将图像读出扩展到 3D,允许回顾性配准和应用去噪策略。此外,还实现了余弦调制的双频预饱和脉冲,并采用了必要频率偏移的加权采集方案。优化后的信噪比提高了约 8 倍。特别是去噪和运动校正的应用是最重要的改进步骤。体外实验验证了双 CEST 信号对蛋白质特异性的保留。实现了良好到极好的单次扫描内和良好的多次扫描间可重复性,能够可靠地检测到约 16%或更高的相对信号差异。对一名患有胶质母细胞瘤的患者进行检查,证明了该优化采集方案在临床环境中的适用性。在 3T 下进行的双 CEST-MRI 的优化采集方案能够在临床相关条件下选择性地对内源性大量可移动蛋白进行成像。